Influence of pyrolytic seeds on ZnO nanorod growth onto rigid substrates for photocatalytic abatement of Escherichia coli in water

Author:

Sanchez Luis1,Guz Lucas2,García Pilar1,Ponce Silvia3,Goyanes Silvia4,Marchi María Claudia5,Candal Roberto25,Estrada Walter1,Rodriguez Juan1

Affiliation:

1. Universidad Nacional de Ingeniería, Lima, Perú

2. Escuela de Ciencia y Tecnología, Universidad Nacional de San Martín, Argentina

3. University of Lima, Lima, Perú

4. Departamento de Física, FCEyN, Universidad de Buenos Aires, IFIBA-CONICET, Argentina

5. INQUIMAE, FCEyN, Universidad de Buenos Aires, Argentina

Abstract

ZnO nanorods (ZnO NRs) were grown on ZnO seeded fluorine doped tin oxide (FTO) substrates at low temperatures (90 °C) from Zn2+ precursors in alkaline aqueous solution. The ZnO seeds were deposited on the FTO substrate heated at 350 °C by spray pyrolysis of a zinc acetate solution in a water ethanol mixture. The structure of seeds was tuned by the ethanol water ratio, Γ, which controls the solvent evaporation rate of drops impinging the substrate. The relationship between the microstructure and optical properties of the ZnO NR films and the photocatalytic antibacterial activity for Escherichia coli abatement, was determined through a detailed characterization of the material. The higher photocatalytic antibacterial activity was performed by ZnO NR films grown on seeds deposited from solutions with Γ in the 0.0–0.03 range. With these films, the population of viable E. coli dropped more than six orders, from 8 × 108 to 4 × 102 CFU. These results show the potential of these materials in water disinfection.

Publisher

IWA Publishing

Subject

Water Science and Technology

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